Literature DB >> 18658223

Trans-channel interactions in batrachotoxin-modified rat skeletal muscle sodium channels: kinetic analysis of mutual inhibition between mu-conotoxin GIIIA derivatives and amine blockers.

Quanli Ma1, Evgeny Pavlov, Tatiana Britvina, Gerald W Zamponi, Robert J French.   

Abstract

R13X derivatives of mu-conotoxin GIIIA bind externally to single sodium channels and block current incompletely with mean "blocked" durations of several seconds. We studied interactions between two classes of blockers (mu-conotoxins and amines) by steady state, kinetic analysis of block of BTX-modified Na channels in planar bilayers. The amines cause all-or-none block at a site internal to the selectivity filter. TPrA and DEA block single Na channels with very different kinetics. TPrA induces discrete, all-or-none, blocked events (mean blocked durations, approximately 100 ms), whereas DEA produces a concentration-dependent reduction of the apparent single channel amplitude ("fast" block). These distinct modes of action allow simultaneous evaluation of block by TPrA and DEA, showing a classical, competitive interaction between them. The apparent affinity of TPrA decreases with increasing [DEA], based on a decrease in the association rate for TPrA. When an R13X mu-conotoxin derivative and one of the amines are applied simultaneously on opposite sides of the membrane, a mutually inhibitory interaction is observed. Dissociation constants, at +50 mV, for TPrA ( approximately 4 mM) and DEA ( approximately 30 mM) increase by approximately 20%-50% when R13E (nominal net charge, +4) or R13Q (+5) is bound. Analysis of the slow blocking kinetics for the two toxin derivatives showed comparable decreases in affinity of the mu-conotoxins in the presence of an amine. Although this mutual inhibition seems to be qualitatively consistent with an electrostatic interaction across the selectivity filter, quantitative considerations raise questions about the mechanistic details of the interaction.

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Year:  2008        PMID: 18658223      PMCID: PMC2567937          DOI: 10.1529/biophysj.108.138271

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  52 in total

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7.  A mu-conotoxin-insensitive Na+ channel mutant: possible localization of a binding site at the outer vestibule.

Authors:  S C Dudley; H Todt; G Lipkind; H A Fozzard
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8.  Extrapore residues of the S5-S6 loop of domain 2 of the voltage-gated skeletal muscle sodium channel (rSkM1) contribute to the mu-conotoxin GIIIA binding site.

Authors:  M Chahine; J Sirois; P Marcotte; L Chen; R G Kallen
Journal:  Biophys J       Date:  1998-07       Impact factor: 4.033

9.  Amine blockers of the cytoplasmic mouth of sodium channels: a small structural change can abolish voltage dependence.

Authors:  G W Zamponi; R J French
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10.  Simultaneous binding of basic peptides at intracellular sites on a large conductance Ca2+-activated K+ channel. Equilibrium and kinetic basis of negatively coupled ligand interactions.

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  2 in total

Review 1.  The tetrodotoxin receptor of voltage-gated sodium channels--perspectives from interactions with micro-conotoxins.

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2.  Trans-channel interactions in batrachotoxin-modified skeletal muscle sodium channels: voltage-dependent block by cytoplasmic amines, and the influence of mu-conotoxin GIIIA derivatives and permeant ions.

Authors:  Evgeny Pavlov; Tatiana Britvina; Jeff R McArthur; Quanli Ma; Iván Sierralta; Gerald W Zamponi; Robert J French
Journal:  Biophys J       Date:  2008-07-25       Impact factor: 4.033

  2 in total

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